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Predicting the Effect of Field Shaper in Electromagnetic Welding Using FEM

机译:用有限元法预测场整形器在电磁焊接中的作用

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摘要

The research work presents a 3D numerical simulation to predict the distribution of magnetic field and pressure in the desired region of the tubular jobs using coils with and without field shapers in electromagnetic welding (EMW). For finite element (FE) simulation, single-turn (ST) and multi-turn (MT) (disk type) coils are considered to analyze the effects of field shapers with varying material combinations in ANSYS MAXWELL environment. The change in magnetic field distribution on the outer peripheral region of the flyer tube along axial direction with and without field shaper is graphically shown and compared. Also, variation of magnetic pressure on the flyer tube with respect to increasing voltage and time is compared individually for various material combinations of ST/MT coil and field shaper. Results show that in welding simulation (FE) using single-turn Cu and SS coils with field shapers of Be, Nb and Ta, the magnetic pressure increases by 34, 12 and 11% and 35, 12 and 11%, respectively, as compared to the coil with no field shaper. In case of multi-turn SS coil with Cu and Be field shapers, the magnetic pressure increases by 16 and 10%, respectively. The novelty of the work is the proper guideline to select the material combinations for ST/MT coils and field shapers and positioning of work pieces inside the coil in order to achieve maximum utilization of input energy in EMW system.
机译:这项研究工作提出了一个3D数值模拟,以使用电磁焊接(EMW)中带有或不带有磁场整形器的线圈来预测管状工件所需区域中的磁场和压力分布。对于有限元(FE)仿真,考虑在ANSYS MAXWELL环境中使用单匝(ST)和多匝(MT)(盘式)线圈来分析具有不同材料组合的场整形器的效果。图形化地显示并比较了在有和没有场整形器的情况下,飞轮管的外周区域上沿轴向方向的磁场分布变化。此外,对于ST / MT线圈和场整形器的各种材料组合,分别比较了飞轮上的磁压力相对于电压和时间的变化。结果表明,在使用具有Be,Nb和Ta磁场整形器的单匝Cu和SS线圈进行的焊接模拟(FE)中,与之相比,磁压分别增加了34%,12%和11%,35、12%和11%到没有场整形器的线圈。对于带有Cu和Be磁场整形器的多匝SS线圈,磁压分别增加16%和10%。这项工作的新颖性是选择ST / MT线圈和场整形器的材料组合以及在线圈内部放置工件的合适指南,以便在EMW系统中最大程度地利用输入能量。

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